Overview of natural hydrogels for regenerative medicine applications
Обзор природных гидрогелей для применения в регенеративной медицине
2019-10-01
SCID: 54.1/4s3e5p6p
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decellularized tissuesglycosaminoglycansnatural hydrogelsregenerative medicinetissue engineering
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Abstract (AI)
Hydrogels from different materials can be used in biomedical field as an innovative approach in regenerative medicine. Depending on the origin source, hydrogels can be synthetized through chemical and physical methods. Hydrogel can be characterized through several physical parameters, such as size, elastic modulus, swelling and degradation rate. Lately, research is focused on hydrogels derived from biologic materials. These hydrogels can be derived from protein polymers, such as collage, elastin, and polysaccharide polymers like glycosaminoglycans or alginate among others. Introduction of decellularized tissues into hydrogels synthesis displays several advantages compared to natural or synthetic based hydrogels. Preservation of natural molecules such as growth factors, glycans, bioactive cryptic peptides and natural proteins can promote cell growth, function, differentiation, angiogenesis, anti-angiogenesis, antimicrobial effects, and chemotactic effects. Versatility of hydrogels make possible multiple applications and combinations with several molecules on order to obtain the adequate characteristic for each scope. In this context, a lot of molecules such as cross link agents, drugs, grow factors or cells can be used. This review focuses on the recent progress of hydrogels synthesis and applications in order to classify the most recent and relevant matters in biomedical field.
Key Findings
1
Biologically derived hydrogels can incorporate protein polymers such as collagen and elastin, or polysaccharides such as glycosaminoglycans and alginate.
2
Decellularized tissue-derived hydrogels preserve growth factors, glycans, bioactive peptides, and natural proteins, potentially enhancing cell growth, differentiation, angiogenesis, antimicrobial activity, and chemotaxis.
3
Hydrogel versatility enables incorporation of crosslinkers, drugs, growth factors, or cells to customize materials for specific regenerative medicine applications.
4
Hydrogels are characterized by parameters including size, elastic modulus, swelling behavior, and degradation rate, which determine their biomedical suitability.
5
Natural hydrogels are increasingly investigated for regenerative medicine because their properties can be tailored through chemical or physical synthesis methods.
Research Object
Natural hydrogels derived from biologic materials, including decellularized tissues, for regenerative medicine
Research Subject
Their synthesis, physicochemical properties, bioactive effects, and biomedical applications
Publication Details
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2019-10-01
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